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A supply chain model with defective items and disposal cost in a just-in-time (JIT) environment

机译:实时(JIT)环境中具有缺陷项目和处置成本的供应链模型

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Previous studies in the issue of supply chain models with imperfect quality assumed the defectives could be sold at lower unit price by the end of the inspection process and the lot-for-lot delivery policy was employed.?However, in practice, defective items may have no salvage value but may need additional disposal cost to process them. The beginning of the printed circuit board (PCB) industry in Taiwan provides a good example of such a situation. Besides, in a just-in-time (JIT) environment, the supplier splits the order quantity into small lot size and delivers them over multiple periods to response the buyer’s need. Therefore, in this paper, a new mathematical model were developed, in which defective items are processed with disposal cost and lot-splitting (single setup, multiple delivers) policy is employed, to determine an optimal single-supplier- single-buyer inventory policy. The objective is to minimize the total joint annual cost incurred by the vendor and buyer in a JIT environment. A procedure free of employing convexity is developed to determine the order quantity, the number of deliveries and the shipping quantity. Numerical example was provided to illustrate the effectiveness of the proposed model. Based on the numerical example, sensitivity analysis was given to investigate the effects of the defective percentage on the optimal solution.
机译:以前对质量不完美的供应链模型问题的研究认为,缺陷产品可以在检查过程结束时以较低的单价出售,并且采用了批量交付政策。但是,实际上,缺陷产品没有残值,但可能需要额外的处置成本才能进行处理。台湾印刷电路板(PCB)行业的兴起为这种情况提供了很好的例证。此外,在即时(JIT)环境中,供应商将订单数量分成小批量,并在多个时期内交付它们,以响应买方的需求。因此,本文建立了一个新的数学模型,在该模型中,以处置成本处理有缺陷的物料,并采用批量拆分(单设置,多次交付)策略,以确定最佳的单供方单买方库存策略。 。目的是最大程度地减少JIT环境中卖方和买方共同承担的年度总费用。开发了不使用凸度的程序来确定订单数量,交货数量和装运数量。数值例子说明了该模型的有效性。在数值例子的基础上,进行了敏感性分析,以研究次品率对最优解的影响。

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